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1、特邀學(xué)術(shù)報告,歡迎光臨!,報告內(nèi)容Massive electrochemical energy storage is an enabling technology that smoothes and firms intermittent and ramping renewable energy resources into utility electric grids. For large-scale renewable ener
2、gy storage at MWh level, multi-cell Lithium-Ion battery systems are still one of the most cost-effective, feasible solutions for ubiquitous deployment. However, design deficiencies in current multi-cell battery systems i
3、mpede them in large-scale renewable energy storage, including 1) monolithic design with fixed cell string structure; 2) lack of an efficient method to utilize the cell state variation for energy conversation efficiency;
4、and 3) reliance on engineering design heuristics and lack of a systematic, holistic design with dynamic power management and time-varying source/load conditions. This talks will focus on an ambitious, paradigm-shifting d
5、esign for large-scale battery systems for renewable energy storage, inspired by the concept of Energy Internet, especially on how to seamlessly integrate information and energy flows in such systems.,報告人簡介Dr. Song Ci is
6、 an Associate Professor with the ECE Department of the University of Nebraska-Lincoln, USA. His current research interests include large-scale dynamic complex system modeling and optimization, energy Internet and distrib
7、uted energy management, green computing and communications, and mobile Internet. He has published more than 180 peer-reviewed articles in those areas, and his research has been support by NSF and other funding sources. H
8、e has served as editor or guest editor in many journals such as IEEE Transactions on CSVT, IEEE JSAC, IEEE Access, and IEEE Wireless Network. He also served in TPC of numerous international conferences. He is senior memb
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